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癸酸氟哌啶醇的酶促水解及其受蛋白质的抑制作用。

Enzymatic hydrolysis of haloperidol decanoate and its inhibition by proteins.

作者信息

Nambu K, Miyazaki H, Nakanishi Y, Oh-e Y, Matsunaga Y, Hashimoto M

出版信息

Biochem Pharmacol. 1987 May 15;36(10):1715-22. doi: 10.1016/0006-2952(87)90058-x.

Abstract

When [14C]haloperidol decanoate, a long-acting neuroleptic and an ester of haloperidol and decanoic acid, was incubated in human whole blood and plasma and in rat plasma and homogenates of rat brain, lung, liver, kidney, pancreas and muscle, no hydrolysis of the ester was seen. Although the decanoate was hydrolyzed by partially purified carboxylesterase, addition of rat plasma or liver homogenate to the enzymic reaction mixture resulted in marked inhibition of hydrolysis, whereas addition of the defatted residues of plasma or liver produced only partial inhibition. The enzymic hydrolysis was inhibited also by beta-lipoprotein and albumin, depending on their concentrations. The assumption that interaction between haloperidol decanoate and protein resulted in inhibition of the hydrolytic reaction mediated by the enzyme was validated by kinetic models and experimental data. The kinetics were apparently competitive. Based on the kinetic analysis, the interaction between the decanoate and albumin or beta-lipoprotein was investigated by measuring their equilibrium constants and extent of protein binding. Haloperidol decanoate appeared to interact with several proteins; this was exemplified by other measures of protein binding, an increasing effect of proteins on the solubility, and the partition ratio of the ester. The interaction between haloperidol decanoate and proteins caused marked stabilization of this ester against enzymatic hydrolysis and, thereby, influenced its metabolism.

摘要

当长效抗精神病药物[14C]氟哌啶醇癸酸酯(氟哌啶醇与癸酸的酯)在人全血、血浆以及大鼠血浆和大鼠脑、肺、肝、肾、胰腺和肌肉的匀浆中孵育时,未观察到酯的水解。尽管癸酸酯可被部分纯化的羧酸酯酶水解,但向酶促反应混合物中加入大鼠血浆或肝匀浆会导致水解受到显著抑制,而加入血浆或肝脏的脱脂残渣仅产生部分抑制。酶促水解也受到β-脂蛋白和白蛋白的抑制,这取决于它们的浓度。氟哌啶醇癸酸酯与蛋白质之间的相互作用导致酶介导的水解反应受到抑制这一假设通过动力学模型和实验数据得到了验证。动力学表现为明显的竞争性。基于动力学分析,通过测量其平衡常数和蛋白质结合程度研究了癸酸酯与白蛋白或β-脂蛋白之间的相互作用。氟哌啶醇癸酸酯似乎与多种蛋白质相互作用;蛋白质结合的其他测量结果、蛋白质对溶解度的增强作用以及酯的分配比都证明了这一点。氟哌啶醇癸酸酯与蛋白质之间的相互作用使该酯对酶促水解具有显著的稳定性,从而影响其代谢。

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